壳聚糖乙醇萃取物水凝胶薄膜:用于二度烧伤创面愈合的新型皮肤组织再生平台。

Jing Wang, Mohammad Ismail, Nauman Rahim Khan, Dur-E-Najaf Khan, Tayyaba Iftikhar, Memuna Ghafoor Shahid, Shefaat Ullah Shah, Zahid Ur Rehman
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引用次数: 0

摘要

本研究探讨了乙醇大蒜提取物负载壳聚糖水凝胶薄膜在动物模型烧伤伤口愈合方面的潜力。大蒜乙醇提取物的制备方法是将新鲜的蒜瓣浸泡在乙醇中 24 小时,然后过滤并用旋转蒸发仪浓缩。然后通过浇铸壳聚糖溶液制备水凝胶,并加入不同浓度的大蒜提取物进行优化,干燥后进行各种表征测试,包括水分吸附(MA)、水蒸气透过率(WVTR)和水蒸气渗透率(WVPR)、侵蚀、膨胀、拉伸强度、振动和热分析以及表面形态。然后对优化的水凝胶(G2)进行了活体分析,以确定其在大鼠二度烧伤伤口愈合方面的潜力,并在愈合期第 14 天对皮肤样本进行了组织学检查。结果显示,优化水凝胶(G2;壳聚糖:2 克,大蒜提取物:1 克)的 MA 值为 56.8% ± 2.7%,WVTR 和 WVPR 分别为 0.00074 ± 0.0002 和 0.000 498 946 ± 0.0001,侵蚀指数为 11.3% ± 0.05%,膨胀指数为 80.7% ± 0.04%,拉伸强度为 16.6 ± 0.9 MPa。9 MPa,这可能是由于配方成分与大蒜提取物成分之间在 OH/NH 和 C=O 上形成了额外的连接,从而导致壳聚糖分子的过渡熔化温度和热焓(ΔT= 238.83 °C ± 1.2 °C,ΔH= 4.95 ± 0.8 J g-1)与空白相比有所增加。动物实验表明,与未处理组和空白组相比,G2 配方通过加速胶原纤维在伤口部位均匀、紧密的沉积,在实验 14 天内明显缩小了伤口面积(37.3 ± 6.8-187.5 ± 21.5 mm2),并显著提高了伤口的再上皮率(86.3 ± 6.8-26.8 ± 21.5 和 38.2% ± 15.3%),从而使所开发的配方成为一个前景广阔的皮肤再生平台。
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Chitosan based ethanolicAllium Sativumextract hydrogel film: a novel skin tissue regeneration platform for 2nd degree burn wound healing.

This study investigated the potential of ethanolic garlic extract-loaded chitosan hydrogel film for burn wound healing in an animal model. The ethanolic garlic extract was prepared by macerating fresh ground garlic cloves in ethanol for 24 h, followed by filtration and concentration using a rotary evaporator. Hydrogels were then prepared by casting a chitosan solution with garlic extract added at varying concentrations for optimization and, following drying, subjected to various characterization tests, including moisture adsorption (MA), water vapor transmission rate (WVTR), and water vapor permeability rate (WVPR), erosion, swelling, tensile strength, vibrational, and thermal analysis, and surface morphology. The optimized hydrogel (G2) was then analyzedin vivofor its potential for healing 2nd degree burn wounds in rats, and histological examination of skin samples on day 14 of the healing period. Results showed optimized hydrogel (G2; chitosan: 2 g, garlic extract: 1 g) had MA of 56.8% ± 2.7%, WVTR and WVPR of 0.00074 ± 0.0002, and 0.000 498 946 ± 0.0001, eroded up to 11.3% ± 0.05%, 80.7% ± 0.04% of swelling index, and tensile strength of 16.6 ± 0.9 MPa, which could be attributed to the formation of additional linkages between formulation ingredients and garlic extract constituents at OH/NH and C=O, translating into an increase in transition melting temperature and enthalpy (ΔT= 238.83 °C ± 1.2 °C, ΔH= 4.95 ± 0.8 J g-1) of the chitosan moieties compared with blank. Animal testing revealed G2 formulation significantly reduced the wound size within 14 d of the experiment (37.3 ± 6.8-187.5 ± 21.5 mm2) and had significantly higher reepithelization (86.3 ± 6.8-26.8 ± 21.5 and 38.2% ± 15.3%) compared to untreated and blank groups by hastening uniform and compact deposition of collagen fibers at the wound site, cementing developed formulation a promising platform for skin regeneration.

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